US2696658A - Method of manufacturing electric machine commutators - Google Patents

Method of manufacturing electric machine commutators Download PDF

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Publication number
US2696658A
US2696658A US207326A US20732651A US2696658A US 2696658 A US2696658 A US 2696658A US 207326 A US207326 A US 207326A US 20732651 A US20732651 A US 20732651A US 2696658 A US2696658 A US 2696658A
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United States
Prior art keywords
segments
electric machine
commutator
elements
mold
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Expired - Lifetime
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US207326A
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Polard Jean
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SO CALLED CIE ELECTRO MECANIQU
SO-CALLED ELECTRO-MECANIQUE Cie SA
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SO CALLED CIE ELECTRO MECANIQU
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Priority to US207326A priority Critical patent/US2696658A/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R43/00Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
    • H01R43/06Manufacture of commutators
    • H01R43/08Manufacture of commutators in which segments are not separated until after assembly
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S200/00Electricity: circuit makers and breakers
    • Y10S200/07Molded drum
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T24/00Buckles, buttons, clasps, etc.
    • Y10T24/36Button with fastener
    • Y10T24/3632Link
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49002Electrical device making
    • Y10T29/49009Dynamoelectric machine
    • Y10T29/49011Commutator or slip ring assembly

Definitions

  • the purpose of the method disclosed hereinafter is to completely do away with any preparatory machining while making it possible to simultaneously produce a number of segment sets, whereby the time necessary for the production of the whole commutator is cut down quite appreciably.
  • the said method of manufacturing electric machine commutators consists in separately molding a pair of complementary elements each of which includes half the number of segments in the collector, which segments are tied together by a thin external ring, enclosing the two said elements in interlocking relation to each other in a common mold, pressing a plastic material into the spaces delimited by said segments, the said rings and the walls of the mold and removing the said segment-interconnecting rings.
  • the pair of exactly similar commutator elements are made of sintered material; in each of them the segments are tied to one another by a ring extending axially at the most over one half of the width of the commutator; moreover, said elements are angularly displaced relative to each other by an angle equal to the pitch of the segments in the collector.
  • Figure 2 is a longitudinal sectional view of said element taken on a diameter through two opposite segments.
  • Figure 3 is an end elevational view of a commutator at a definite stage of its manufacture after the insulating plastic material has been pressed into the interstices between the two interlocked elements.
  • Figure 4 is a sectional view taken on the broken line A-A in Fig. 3.
  • Figure 5 is a side View of the same commutator.
  • the interconnecting ring is formed at its outer end with a shallow depression 5 whereby a more accurate centering of the element in the mold is obtained and an access is given to the plastic material up to the outer diameter of the segments.
  • the said ring 3 extends over a portion of the length of the segments which however should not exceed one half of the same.
  • a pair of commutator elements similar to the one just described are arranged each in the one half of a mold.
  • the elements are so positioned relative to each other that the segments 1 of the one element intermesh with the segments 1 of the other element and that a uniform interval is defined between each pair of successive segments which corresponds to the thickness of the insulating layer (see Fig. 3); the two ring portions 3, 3 are located opposite each other and may even abut each other as shown in Fig. 4.
  • Figs. 3 and 5 illustrate the position of the commutator elements relative to each other.
  • This method makes it also possible to form the sintered commutator elements with notches 7 as shown in Figs. 4 and 5 for the connection of the armature sections with the commutator, whereby extra work is saved.
  • a method of manufacturing electric machine commutators which consists in separately molding a pair of complementary elements each of which includes half the number of segments in the collector, which segments are equidistantly spaced and tied together by a thin external ring, enclosing the two said elements in intermeshing relation to each other in a common mold, arranging a central bushing within said mold, and pressing an insulating plastic material into the space delimited by said segments, said ring, said bushing and the walls of the mold, thereby simultaneously forming an internal hub of insulating plastic material adjacent the segments and the bushing.
  • a method of manufacturing electric machine commutators which consists in separately molding a pair of complementary elements each of which includes half the number of segments in the collector, which segments are equidistantly spaced and tied together by a thin external ring, enclosing the two said elements in intermeshing relation to each other in a common mold, arranging a central bushing within said mold, pressing an insulating plastic material into the space delimited by said segments, said ring, said bushing and the walls of the mold, thereby simultaneously forming an internal hub of insulating plastic material adjacent the segments and the bushing, and finally removing the aforesaid segmentinterconnecting rings.

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Motor Or Generator Current Collectors (AREA)

Description

ORS
J. POLARD Dec. 14, 1954 METHOD OF MANUFACTURING ELECTRIC MACHINE COMMUTAT Filed Jan. 23, 1951 [/7 v6)? for Jean P0 /"-0' United States Patent i lfiiice 2,696,658 Patented Dec. 14, 1954 PVTETHOD OF MANUFACTURING ELECTRIC MACHINE COMMUTATORS .l'ean Iolai'd, Saint-Gcrmain-en-Laye, France, assignor to Soclete Anonyme SQ-(Iafififi: Compagnie Electra-Mecanique, Paris, Seine, France Application January 23, 1951, Serial No. 207,326 2 Claims. (Cl. 29-15554) The production of electric machine comrnutators is expensive on account of the considerable time required to manufacture and assemble the copper segments as well as the web-like insulators with the accuracy necessary to ensure satisfactory performance. Various methods have already been resorted to for the purpose or" decreasing the time necessary for the assembly by making the insulation of a plastic material capable of being hardened by the application of heat and adapted at the same time to keep the segments assembled. According to these methods, the segments are made by starting from copper sheets, bands or tubes which are machined to the required dimensions, all the segments remain solid with one another until the plastic material has been injected. Of course, the time required for the assembly is spared, yet time is still required for the machining ste in addition to which, generally, the sets of segments providing each a whole commutator can only be manufactured one by one.
The purpose of the method disclosed hereinafter is to completely do away with any preparatory machining while making it possible to simultaneously produce a number of segment sets, whereby the time necessary for the production of the whole commutator is cut down quite appreciably.
The said method of manufacturing electric machine commutators consists in separately molding a pair of complementary elements each of which includes half the number of segments in the collector, which segments are tied together by a thin external ring, enclosing the two said elements in interlocking relation to each other in a common mold, pressing a plastic material into the spaces delimited by said segments, the said rings and the walls of the mold and removing the said segment-interconnecting rings.
Preferably, the pair of exactly similar commutator elements are made of sintered material; in each of them the segments are tied to one another by a ring extending axially at the most over one half of the width of the commutator; moreover, said elements are angularly displaced relative to each other by an angle equal to the pitch of the segments in the collector.
An embodiment of the present invention is illustrgteg by way of example in the appended drawing, in w ic Figure 1 is an elevational view of one element in the pair.
Figure 2 is a longitudinal sectional view of said element taken on a diameter through two opposite segments.
Figure 3 is an end elevational view of a commutator at a definite stage of its manufacture after the insulating plastic material has been pressed into the interstices between the two interlocked elements.
Figure 4 is a sectional view taken on the broken line A-A in Fig. 3.
Figure 5 is a side View of the same commutator.
According to the invention, a commutator element is made by any known sintering process which is formed with half the number of segments in the finished commutator (see Fig. l). The said segments 1 are uniformly spaced and the distance between any two successive segments is equal to the width of a segment plus twice the thickness of the insulating layer. They are interconnected by a peripheral ring solid therewith which need not be thicker than necessary to prevent the element from being distorted in the course of its manipulation. The segments are formed at their ends with notches 4 (see Fig. 2) in which subsequently the insulating plastic material will become anchored. The interconnecting ring is formed at its outer end with a shallow depression 5 whereby a more accurate centering of the element in the mold is obtained and an access is given to the plastic material up to the outer diameter of the segments. The said ring 3 extends over a portion of the length of the segments which however should not exceed one half of the same. The commutator element thus defined is simple in design and can be obtained readily and rapidly by a sintering process carried out in a mold, no compieinentary machining being needed.
In a further step of manufacture a pair of commutator elements similar to the one just described are arranged each in the one half of a mold.
In the closed mold the elements are so positioned relative to each other that the segments 1 of the one element intermesh with the segments 1 of the other element and that a uniform interval is defined between each pair of successive segments which corresponds to the thickness of the insulating layer (see Fig. 3); the two ring portions 3, 3 are located opposite each other and may even abut each other as shown in Fig. 4.
If found advisable, it is also possible to arrange a central bushing 6, preferably made of steel, within the mold, which later on will be useful in mounting the finished commutator on the electric machine shaft to be fitted therewith.
As a result of the injection of a plastic material the two elements are rigidly assembled to a complete commu tator. The commutator rough thus obtained is then brought to its final shape and size by removing the segment-interconnecting ring on the lathe. Figs. 3 and 5 illustrate the position of the commutator elements relative to each other.
This method makes it also possible to form the sintered commutator elements with notches 7 as shown in Figs. 4 and 5 for the connection of the armature sections with the commutator, whereby extra work is saved.
it remains within the scope of this invention to shape the commutator elements described hereinbefore otherwise than by sintering since they may as well be obtained by a refined molding process or by chill molding followed with a dying to size.
What I claim is:
l. A method of manufacturing electric machine commutators which consists in separately molding a pair of complementary elements each of which includes half the number of segments in the collector, which segments are equidistantly spaced and tied together by a thin external ring, enclosing the two said elements in intermeshing relation to each other in a common mold, arranging a central bushing within said mold, and pressing an insulating plastic material into the space delimited by said segments, said ring, said bushing and the walls of the mold, thereby simultaneously forming an internal hub of insulating plastic material adjacent the segments and the bushing.
2. A method of manufacturing electric machine commutators which consists in separately molding a pair of complementary elements each of which includes half the number of segments in the collector, which segments are equidistantly spaced and tied together by a thin external ring, enclosing the two said elements in intermeshing relation to each other in a common mold, arranging a central bushing within said mold, pressing an insulating plastic material into the space delimited by said segments, said ring, said bushing and the walls of the mold, thereby simultaneously forming an internal hub of insulating plastic material adjacent the segments and the bushing, and finally removing the aforesaid segmentinterconnecting rings.
References Cited in the file of this patent UNITED STATES PATENTS Number Name Date 264,230 Beardslee Sept. 12, 1882 927,675 Perkins July 13, 1909 1,407,776 Stone Feb. 28, 1922 1,875,204 Apple Aug. 30, 1932 2,053,662 Hardy Sept. 8, 1936 2,236,257 Borchers Mar. 25, 1941 2,451,500 Le Greid Oct. 19, 1948
US207326A 1951-01-12 1951-01-23 Method of manufacturing electric machine commutators Expired - Lifetime US2696658A (en)

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Application Number Priority Date Filing Date Title
US207326A US2696658A (en) 1951-01-12 1951-01-23 Method of manufacturing electric machine commutators

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
GB904/51A GB677499A (en) 1951-01-12 1951-01-12 Improvements in or relating to methods of manufacturing electric commutators
US207326A US2696658A (en) 1951-01-12 1951-01-23 Method of manufacturing electric machine commutators

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2834095A (en) * 1956-10-16 1958-05-13 Sperry Rand Corp Method of making drum type sequence switches
US2866051A (en) * 1955-09-30 1958-12-23 Gen Electric Cast resin commutating rheostat
US2918542A (en) * 1957-06-11 1959-12-22 Instr Dev Lab Inc Hermetically sealed rotary switches
US2936519A (en) * 1956-03-28 1960-05-17 M O Valve Co Ltd Manufacture of interdigital metal structures
US2984715A (en) * 1959-04-24 1961-05-16 Gen Devices Inc Sub-miniature multi-signal mechanical commutator
US3151384A (en) * 1960-12-19 1964-10-06 Honeywell Regulator Co Method of making electrical collector means
US3163923A (en) * 1959-12-31 1965-01-05 Gen Precision Inc Method of making a coded drum
US3224076A (en) * 1962-03-01 1965-12-21 Electric Materials Co Method of making a commutator
US3411201A (en) * 1963-10-28 1968-11-19 Russell R. Krone Method of manufacturing a rotary switch
US3518382A (en) * 1963-10-28 1970-06-30 Russell R Krone Rotor drum contact construction with integral molded insulation spacer means
US4896409A (en) * 1985-01-24 1990-01-30 Robert Bosch Gmbh Method of producing a rotationally-symmetrical housing, in particular a valve housing
US6490780B1 (en) * 1998-11-11 2002-12-10 Samsung Electronics Co., Ltd. Method for making a commutator

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2585521B1 (en) * 1985-07-26 1987-11-20 Bruss Respub Nauc METHOD FOR MANUFACTURING ELECTRIC MACHINE COLLECTORS AND COLLECTORS OBTAINED BY SAID METHOD
US4705977A (en) * 1986-02-10 1987-11-10 Mitsuba Electric Manufacturing Co., Ltd. Molded commutator with enlarged diameter riser section

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US264230A (en) * 1882-09-12 Commutator for dynamo-electric machines
US927675A (en) * 1907-03-01 1909-07-13 Thomas F Perkins Means for utilizing electrical energy.
US1407776A (en) * 1919-12-01 1922-02-28 Gilbert Co A C Manufacture of commutator for electric motors
US1875204A (en) * 1928-07-05 1932-08-30 Vincent G Apple Commutator and method of making it
US2053662A (en) * 1933-11-24 1936-09-08 Hardy Metallurg Company Method of making electrical conductors
US2236257A (en) * 1938-03-23 1941-03-25 Gen Ind Co Commutator
US2451500A (en) * 1945-04-26 1948-10-19 Fairchild Engineering Company Method of making commutators

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US264230A (en) * 1882-09-12 Commutator for dynamo-electric machines
US927675A (en) * 1907-03-01 1909-07-13 Thomas F Perkins Means for utilizing electrical energy.
US1407776A (en) * 1919-12-01 1922-02-28 Gilbert Co A C Manufacture of commutator for electric motors
US1875204A (en) * 1928-07-05 1932-08-30 Vincent G Apple Commutator and method of making it
US2053662A (en) * 1933-11-24 1936-09-08 Hardy Metallurg Company Method of making electrical conductors
US2236257A (en) * 1938-03-23 1941-03-25 Gen Ind Co Commutator
US2451500A (en) * 1945-04-26 1948-10-19 Fairchild Engineering Company Method of making commutators

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2866051A (en) * 1955-09-30 1958-12-23 Gen Electric Cast resin commutating rheostat
US2936519A (en) * 1956-03-28 1960-05-17 M O Valve Co Ltd Manufacture of interdigital metal structures
US2834095A (en) * 1956-10-16 1958-05-13 Sperry Rand Corp Method of making drum type sequence switches
US2918542A (en) * 1957-06-11 1959-12-22 Instr Dev Lab Inc Hermetically sealed rotary switches
US2984715A (en) * 1959-04-24 1961-05-16 Gen Devices Inc Sub-miniature multi-signal mechanical commutator
US3163923A (en) * 1959-12-31 1965-01-05 Gen Precision Inc Method of making a coded drum
US3151384A (en) * 1960-12-19 1964-10-06 Honeywell Regulator Co Method of making electrical collector means
US3224076A (en) * 1962-03-01 1965-12-21 Electric Materials Co Method of making a commutator
US3411201A (en) * 1963-10-28 1968-11-19 Russell R. Krone Method of manufacturing a rotary switch
US3518382A (en) * 1963-10-28 1970-06-30 Russell R Krone Rotor drum contact construction with integral molded insulation spacer means
US4896409A (en) * 1985-01-24 1990-01-30 Robert Bosch Gmbh Method of producing a rotationally-symmetrical housing, in particular a valve housing
US6490780B1 (en) * 1998-11-11 2002-12-10 Samsung Electronics Co., Ltd. Method for making a commutator

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FR999777A (en) 1952-02-05
GB677499A (en) 1952-08-13

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